首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Photocatalytic oxidation of benzene, toluene, ethylbenzene and m-xylene in the gas-phase over TiO2-based catalysts
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Photocatalytic oxidation of benzene, toluene, ethylbenzene and m-xylene in the gas-phase over TiO2-based catalysts

机译:TiO2基催化剂在气相中光催化氧化苯,甲苯,乙苯和间二甲苯

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摘要

In the present work, the photocatalytic oxidation of benzene, toluene, ethylbenzene and m-xylene (BTEX) in the gas phase over various UV-irradiated TiO2-based catalysts was studied. Specifically, five catalysts were tested: four based on P25 from Degussa adding 0.25% (w/w) Pt, Fe or Ce (P25, P25/Pt, P25/Fe, P25/Ce) and one prepared according to the isopropoxide method. Inlet BTEX concentrations ranged in 0.5-21 ppmv, whereas oxygen concentration was fixed (21%, v/v) at all experiments and the residence time was adjusted to 11.5 s. Ce addition to P25 catalyst led to the highest photocatalytic oxidation rates for benzene and ethylbenzene, whereas P25 proved to be the most active catalyst on toluene photo-oxidation. Regarding m-xylene, the choice of the most effective catalyst depended on m-xylene reactor concentration. Taking all experimental results into account, P25/Ce was the most effective catalyst due to its superiority in the case of benzene and ethylbenzene and its comparable performance to the base catalyst for toluene and m-xylene photocatalytic oxidation. In general, all P25 based catalysts were more active than the isopropoxide catalyst. All conversions showed great dependence on the inlet concentration of the target compound. Water addition to the reactor during ethylbenzene photo-oxidation enhanced the rates achieved for all catalysts tested. It has to be noted that the differences in the reaction rates achieved from catalyst to catalyst decreased with water vapours addition to the reactor. Finally, a Langmuir-Hinshelwood kinetic model has been applied to the experimental data obtained. The kinetic data obtained confirmed the strong beneficial effect of Ce addition to P25 catalyst on benzene and ethylbenzene photocatalytic oxidation.
机译:在目前的工作中,研究了在各种紫外线辐射的TiO2基催化剂上气相中苯,甲苯,乙苯和间二甲苯(BTEX)的光催化氧化。具体地,测试了五种催化剂:四种基于来自德固赛的P25,添加了0.25%(w / w)的Pt,Fe或Ce(P25,P25 / Pt,P25 / Fe,P25 / Ce),另一种根据异丙醇方法制备。入口BTEX浓度范围为0.5-21 ppmv,而在所有实验中氧气浓度都是固定的(21%,v / v),停留时间调整为11.5 s。 P25催化剂中的Ce导致苯和乙苯的光催化氧化速率最高,而P25被证明是甲苯光氧化活性最高的催化剂。关于间二甲苯,最有效的催化剂的选择取决于间二甲苯反应器的浓度。考虑到所有实验结果,P25 / Ce是最有效的催化剂,因为它在苯和乙苯方面具有优越性,并且与甲苯和间二甲苯的光催化氧化碱性催化剂具有可比的性能。通常,所有基于P25的催化剂都比异丙醇催化剂更具活性。所有转化均显示出对目标化合物入口浓度的高度依赖性。在乙苯光氧化过程中向反应器中加水可提高所有测试催化剂的反应速率。必须注意,随着向反应器中添加水蒸气,催化剂之间的反应速率差异减小。最后,将Langmuir-Hinshelwood动力学模型应用于获得的实验数据。所获得的动力学数据证实了将Ce添加到P25催化剂中对苯和乙苯的光催化氧化具有强大的有益作用。

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